染色质
细胞生物学
编码
生物
组蛋白
计算生物学
表观遗传学
遗传学
表观遗传学
DNA甲基化
基因
基因表达
作者
Yanxiang Deng,Marek Bartošovič,Petra Kukanja,Di Zhang,Yang Liu,Graham Su,Archibald Enninful,Zhiliang Bai,Gonçalo Castelo‐Branco,Rong Fan
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2022-02-10
卷期号:375 (6581): 681-686
被引量:182
标识
DOI:10.1126/science.abg7216
摘要
Spatial omics emerged as a new frontier of biological and biomedical research. Here, we present spatial-CUT&Tag for spatially resolved genome-wide profiling of histone modifications by combining in situ CUT&Tag chemistry, microfluidic deterministic barcoding, and next-generation sequencing. Spatially resolved chromatin states in mouse embryos revealed tissue-type-specific epigenetic regulations in concordance with ENCODE references and provide spatial information at tissue scale. Spatial-CUT&Tag revealed epigenetic control of the cortical layer development and spatial patterning of cell types determined by histone modification in mouse brain. Single-cell epigenomes can be derived in situ by identifying 20-micrometer pixels containing only one nucleus using immunofluorescence imaging. Spatial chromatin modification profiling in tissue may offer new opportunities to study epigenetic regulation, cell function, and fate decision in normal physiology and pathogenesis.
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